Melatonin reverses urinary system and aorta damage in the rat due to chronic nicotine administration

Göksel Sener1, Caner Kapucu, Kübra Paskaloglu

  • 1Department of Pharmacology, School of Pharmacy, Marmara University, Istanbul, Turkey. gokselsener@hotmail.com

Insights

Chronic nicotine harms rat corpus cavernosum, bladder, and aorta function and increases oxidant damage. Melatonin treatment effectively reversed these nicotine-induced negative effects, acting as a potent antioxidant.

Area of Science:

  • Pharmacology
  • Toxicology
  • Physiology

Background:

  • Nicotine administration can induce oxidative stress and damage in various tissues.
  • The corpus cavernosum, urinary bladder, and aorta are susceptible to nicotine-induced dysfunction.
  • Melatonin is a known antioxidant with potential protective effects against tissue damage.

Purpose of the Study:

  • To evaluate the impact of chronic nicotine exposure on the contractile activity and oxidant damage of rat corpus cavernosum, urinary bladder, kidney, and aorta.
  • To investigate the potential protective effects of melatonin against nicotine-induced tissue damage and dysfunction.

Main Methods:

  • Male Wistar albino rats were administered nicotine (0.6 mg/kg daily for 21 days) or saline.
  • Melatonin (10 mg/kg) was administered alone or concurrently with nicotine.
  • Contractility studies, malondialdehyde and glutathione level measurements, and histological examinations were performed on corpus cavernosum, bladder, aorta, and kidney tissues.

Main Results:

  • Nicotine significantly decreased contractile responses and increased malondialdehyde (lipid peroxidation) while reducing glutathione (antioxidant) in the studied tissues.
  • Melatonin treatment reversed the contractile dysfunction and normalized oxidant/antioxidant levels.
  • Histological analysis showed melatonin reduced nicotine-induced microscopic tissue damage.

Conclusions:

  • Chronic nicotine administration leads to significant functional and oxidative impairment in the corpus cavernosum, bladder, and aorta.
  • Melatonin effectively reverses nicotine-induced dysfunction and protects tissues by mitigating oxidative stress.
  • Melatonin demonstrates significant antioxidant properties, protecting against nicotine-induced lipid peroxidation and tissue damage.